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All-Pass Based Filter Design Using BAW Resonators

机译:基于All-Pass基滤波器设计使用BAW谐振器

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The integration of multiple bands and higher power standards lead to enhanced interference problems and make higher attenuation levels in next-gen RF-Front-Ends necessary. This paper introduces an all-pass based BAW filter design concept for notch, band-stop and band-pass filter topologies to indicate the possibilities and the impact of key parameters like material electromechanical coupling factor k_(eff)~2, piezoelectric material quality factor Q_m and inductor losses Q_L. This work outlines the concept and design aspects. Also various examples will be proposed to show the main benefits of this approach.
机译:多频带和更高功率标准的集成导致增强的干扰问题,并在必要的下一射频端中进行更高的衰减水平。本文介绍了一种基于凹口,带停止和带通滤波器拓扑的全通过基于BAW过滤器设计概念,以指示材料机电耦合因子K_(EFF)〜2,压电材料质量因子等关键参数的可能性和影响Q_M和电感损耗Q_L。这项工作概述了概念和设计方面。还将提出各种实例来展示这种方法的主要好处。

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